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The IbpA and IbpB small heat-shock proteins are substrates of the AAA plus Lon protease

机译:Ibpa和IbpB小热休克蛋白是aaa加Lon蛋白酶的底物

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摘要

Small heat-shock proteins (sHSPs) are a widely conserved family of molecular chaperones, all containing a conserved α-crystallin domain flanked by variable N- and C-terminal tails. We report that IbpA and IbpB, the sHSPs of Escherichia coli, are substrates for the AAA+ Lon protease. This ATP-fueled enzyme degraded purified IbpA substantially more slowly than purified IbpB, and we demonstrate that this disparity is a consequence of differences in maximal Lon degradation rates and not in substrate affinity. Interestingly, however, IbpB stimulated Lon degradation of IbpA both in vitro and in vivo. Furthermore, although the variable N- and C-terminal tails of the Ibps were dispensable for proteolytic recognition, these tails contain critical determinants that control the maximal rate of Lon degradation. Finally, we show that E. coli Lon degrades variants of human α-crystallin, indicating that Lon recognizes conserved determinants in the folded α-crystallin domain itself. These results suggest a novel mode for Lon substrate recognition and provide a highly suggestive link between the degradation and sHSP branches of the protein quality-control network.
机译:小型热休克蛋白(sHSP)是分子伴侣的一个广泛保守的家族,所有分子均包含一个保守的α-晶状体蛋白结构域,其侧翼是可变的N和C末端尾巴。我们报告IbpA和IbpB,大肠杆菌的sHSPs,是AAA + Lon蛋白酶的底物。这种由ATP燃料驱动的酶比纯化的IbpB降解的速度要慢得多,并且我们证明了这种差异是最大Lon降解速率差异的结果,而不是底物亲和力的差异。然而,有趣的是,在体外和体内,IbpB刺激Lbp的Lon降解。此外,尽管对于蛋白水解识别而言,Ibps的可变N和C末端尾巴是可有可无的,但这些尾巴包含控制Lon降解率最高的关键决定簇。最后,我们显示大肠杆菌Lon降解人α-晶状体蛋白的变体,表明Lon识别折叠的α-晶状体蛋白域本身中的保守决定簇。这些结果表明,Lon底物识别的一种新模式,并提供蛋白质质量控​​制网络的降解和sHSP分支之间的高度暗示性联系。

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